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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Fast and noninvasive fluorescence imaging of biological tissues in vivo using a flying-spot scanner
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Fast and noninvasive fluorescence imaging of biological tissues in vivo using a flying-spot scanner

机译:使用飞点扫描仪对体内生物组织进行快速无创荧光成像

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摘要

The authors have developed a flying-spot scanner (FSS), for fluorescence imaging of tissues in vivo. The FSS is based on the principles of single-pixel illumination and detection via a raster scanning technique. The principal components of the scanner are a laser light source, a pair of horizontal and vertical scanning mirrors to deflect the laser light in these respective directions on the tissue surface, and a photo multiplier tube (PMT) detector. This paper characterizes the performance of the FSS for fluorescence imaging of tissues in vivo. First, a signal-to-noise ratio (SNR) analysis is presented. This is followed by characterization of the experimental SNR, linearity and spatial resolution of the FSS. Finally, the feasibility of tissue fluorescence imaging is demonstrated using an animal model. In summary, the performance of the FSS is comparable to that of fluorescence-imaging systems based on multipixel illumination and detection. The primary advantage of the FSS is the order-of-magnitude reduction in the cost of the light source and detector. However, the primary disadvantage of the FSS its significantly slower frame rate (1 Hz). In applications where high frame rates are not critical, the FSS will represent a low-cost alternative to multichannel fluorescence imaging-systems.
机译:作者开发了一种飞点扫描仪(FSS),用于体内组织的荧光成像。 FSS基于单像素照明和通过光栅扫描技术进行检测的原理。扫描仪的主要组件是激光源,一对水平和垂直扫描镜,它们使激光在组织表面上沿这些各自的方向偏转,以及光电倍增管(PMT)检测器。本文描述了FSS在体内组织荧光成像中的性能。首先,提出了信噪比(SNR)分析。接下来是FSS实验SNR,线性和空间分辨率的表征。最后,使用动物模型证明了组织荧光成像的可行性。总之,FSS的性能可与基于多像素照明和检测的荧光成像系统相媲美。 FSS的主要优点是降低了光源和检测器成本的数量级。但是,FSS的主要缺点是帧速率(1 Hz)明显较慢。在高帧频不是关键的应用中,FSS将代表多通道荧光成像系统的低成本替代品。

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